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Biomedical subjects

R Bouillon

Publications and source records attributed to R Bouillon.

At least 271 records · Page 15Linked to original sources

Percutaneous transhepatic venous sampling of the pancreas in localizing insulinomas.

Fourteen percutaneous transhepatic venous samplings of the pancreas were performed in 13 patients. Ten patients undergoing 11 samplings were operated, while 3 patients were not operated. Surgical intervention disclosed a single tumor in 8 patients, a double tumor in 1 patient and diffuse hyperplasia in 1 patient. The method allowed correct localization of 5 insulinomas and correct regionalizing of 4 insulinomas in 9 of 10 small tumoral lesions. In 1 double localization of the pancreatic body percutaneous venous sampling only detected 1 lesion. In 1 case of diffuse hyperplasia of the pancreatic tail, the venous sampling was suggestive for a tumor in the pancreatic tail. The method appears to be highly accurate in diagnosing and localizing insulinomas of the pancreas. However, a need persists for 3-dimensional localization of the lesions to facilitate enucleation. Intraoperative ultrasound could become the method of choice for localization of insulinomas.

Adult↗

Rickets due to dietary calcium deficiency.

Three children, aged 15-18 months were referred because of clinical, radiological and biochemical manifestations of rickets. Serum 25-hydroxycholecalciferol (25-OH-D3) values were within the normal range but 1,25-dihydroxychole-calciferol (1,25-diOH-D3) levels were markedly elevated. All signs and symptoms could be explained by dietary calcium deficiency. They all received the commercial Soya-drink - not adapted for infants - as their main source of nutrition for at least 6 months. Soya-drink has an extremely low calcium content. It should be remembered that defective calcium intake causes severe bone lesions and rickets in children in spite of adequate vitamin D supply.

Calcitriol↗

T lymphocytes and their CD4 subset are direct targets for the inhibitory effect of calcitriol.

We studied the direct effects of the hormone calcitriol on the activation and proliferation of pure T lymphocytes and their subsets. Calcitriol inhibited the proliferation of T lymphocytes stimulated in the absence of monocytes with phytohemagglutinin (PHA) and either a monocytic culture supernatant or a combination of monocyte-derived interleukin 1 and interleukin 6. This inhibition was not influenced by the concentration of the stimulating agents. The minimal effective concentration of calcitriol was 10(-10) M. In contrast, the interleukin 2 (10 U/ml)-driven growth of PHA-stimulated T lymphocytes was not significantly altered by calcitriol at 10(-8) M. The hormone had also no influence on the T lymphocyte proliferation induced by a combination of PHA and the anti-CD28 monoclonal antibody 9.3. Pure T lymphocytes, after incubation for 5 days with PHA and monocytic factors, expressed a high level of transferrin receptors. This phenomenon was strongly suppressed on both CD4 and CD8 subsets when 10(-8) M calcitriol had been present during the culture. Moreover, the proliferation of pure CD4 cells was directly inhibited by calcitriol in similar conditions as for unseparated T lymphocytes. We conclude that T lymphocytes and their CD4 subset are direct targets for the inhibitory effect of calcitriol.

Antibodies, Monoclonal↗

Increases in calbindin D 28K mRNA in the uterus of the domestic fowl induced by sexual maturity and shell formation.

Uterine concentrations of calbindin D 28K mRNA were measured in immature pullets and laying hens by dot-blot hybridization using a [32P]cRNA probe prepared from the calbindin cDNA. In immature pullets, estrogen increased the calbindin mRNA level and the plasma concentration of 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3]. When testosterone was administered with estrogen there was a further increase in calbindin and its mRNA and an increase in the free 1,25-(OH)2D3 index calculated as the ratio of the molar concentrations of total 1,25-(OH)2D3 and vitamin D-binding protein (DBP). In laying hens the uterine concentration of calbindin mRNA was low 4 hr after ovulation, but increased most markedly 12 and 18 hr later, when shell calcification took place. Calbindin concentration remained unchanged during the different stages of egg formation but was much higher in laying hens than in pullets treated with sex steroids. Suppression of shell formation by premature expulsion of the egg decreased the concentrations of calbindin mRNA and uterine calbindin and the free 1,25-(OH)2D3 index in the plasma. A concomitant increase in calbindin and its mRNA was observed at resumption of shell formation in hens previously laying shell-less eggs. Withdrawal of food for 44 hr decreased the uterine concentration of calbindin and its mRNA without a change in the free 1,25-(OH)2D3 index in the blood. It is concluded that the synthesis of uterine calbindin is stimulated primarily at sexual maturity and at calcification of the first shell by transcriptional processes. The daily increase in calbindin mRNA associated with shell formation and the absence of a concomitant change in calbindin concentration suggest that post-transcriptional processes exist and that stimuli other than the sex steroid or the 1,25-(OH)2D3 are involved in regulation of calbindin synthesis in the uterus.

Animals↗

Vitamin D status of elderly people in Spain.

Serum levels of 25-hydroxyvitamin D (25OHD3), 1, 25-dihydroxyvitamin D [1, 25-(OH)2D3], PTH and osteocalcin were measured in 114 subjects living in the South of Spain (Cordoba, latitude 37.6 degrees) during early spring. Results in young healthy adults (group G1) were compared with values found in three groups of elderly subjects (mean age 77 years): healthy elderly people living at home (G2), or in a residence (G3) and chronically sick and hospitalized elderly patients (G4). Mean serum 25OHD3 was lower in the elderly groups G2 and G3 than in young adults but the lowest values were found in G4. The opposite trend was found for serum PTH. Mean serum 1,25-(OH)2D3 levels were similar in G2 and G3 to G1 but were significantly lower in G4. In a sunny country only chronically sick and hospitalized elderly patients have very low 25OHD3 levels and fail to maintain normal 1,25-(OH)2D3 concentrations despite secondary hyperparathyroidism.

Adult↗

Maternal and fetal endocrine pancreas in the spontaneously diabetic BB rat.

The maternal and fetal endocrine pancreas were investigated in the diabetic BB rat on day 21 of pregnancy. The maternal pancreas of the diabetic rat contained practically no insulin-positive B cells. The A and D cell mass were also decreased, while plasma glucagon and somatostatin levels were normal or increased, confirming previous data. Six of 11 diabetic rats had B-cell-specific surface antibodies (ICSA), whereas only 1 of 10 nondiabetic rats was ICSA-positive. The volume density of insulin-positive cells was decreased in the fetal pancreas of diabetic BB rats compared to fetuses of nondiabetic rats, but the volume density of glucagon- and somatostatin-positive cells remained normal. The B cells of these fetuses were ultrastructurally less granulated and showed signs of increased cellular activity. Plasma insulin levels were decreased while plasma glucagon and somatostatin concentrations were normal. ICSA were not detected in fetuses of nondiabetic and diabetic rats. There were no differences in the histology of the spleen and thymus between both groups of fetuses. Metabolic characterization of the growth-retarded fetuses of diabetic rats revealed, besides lower plasma insulin concentrations, increased branched chain amino acid levels, and normal plasma Sm/IGF-I levels. The main conclusions from this study are: (1) Severe maternal diabetes decreases the pancreatic insulin-positive cell mass and plasma insulin levels in the fetus, but not the A and D cell mass and function; (2) ICSA are not detectable in fetal plasma; (3) the influence of maternal BB rat diabetes on fetal endocrine pancreas and metabolic environment resembles that of severe streptozotocin-induced diabetes.

Animals↗

Hyperparathyroidism and abnormal calcitriol metabolism in the spontaneously hypertensive rat.

Abnormalities of calcium metabolism and of its two principal regulating hormones, parathyroid hormone and 1,25-dihydroxyvitamin D3 (calcitriol), have been reported in the spontaneously hypertensive rat (SHR). Reports of abnormal calcitriol metabolism in the SHR by several groups have not provided measurements of tissue calcitriol receptors. Similarly, few data are available as to the parathyroid status of the SHR. In the present study, circulating calcitriol levels and intestinal and parathyroid gland calcitriol receptor status were determined in male SHR and in Wistar-Kyoto (WKY) rats. Parathyroid status was investigated by determination of parathyroid gland mass together with tissue micromorphometry and by quantitative histology of bone as a measure of the biological action of parathyroid hormone. Circulating calcitriol levels were reduced in the 11-week-old SHR compared with the WKY rat (165 +/- 23 vs. 194 +/- 28 pmol/l, p less than 0.01, mean +/- SD). Calcitriol-free ratio was diminished and maximal specific binding capacity for calcitriol was increased in the SHR in parathyroid tissue (172 +/- 4.9 vs. 123 +/- 6.6 fmol/mg protein, p less than 0.01) and in intestinal mucosa with no change of receptor affinity. Plasma ionized calcium (1.29 +/- 0.05 vs. 1.45 +/- 0.35 mmol/l, p less than 0.05) and phosphate (1.5 +/- 0.26 vs. 2.4 +/- 0.03 mmol/l, p less than 0.05) were significantly lower in the SHR. Parathyroid gland mass was increased in the SHR (59 +/- 12 vs. 17 +/- 7 micrograms/100 g body wt, p less than 0.001) as a result of hyperplasia and not hypertrophy. Higher osteoclast numbers were observed in SHR bone (27.6 +/- 0.79 vs. 23.9 +/- 0.66 osteoclasts/mm2, p less than 0.01), suggesting increased parathyroid hormone activity. In summary, in the 11-week-old SHR we observed reduced circulating calcitriol levels together with increased tissue calcitriol receptor numbers, increased parathyroid gland mass, and histological evidence of hyperparathyroidism. It is possible that these abnormalities influence the development of hypertension in the SHR.

Animals↗

Vitamin D metabolism in breast-fed infants and their mothers.

The aim of this longitudinal study was to examine vitamin D metabolism in exclusively breast-fed infants. The four common vitamin D metabolites--25-hydroxyvitamin D (25OHD), 1,25-dihydroxyvitamin D [1,25(OH)2D], 24,25-dihydroxyvitamin D [24,25(OH)2D], and 25,26-dihydroxyvitamin D [25,26(OH)2D]--as well as vitamin D binding protein (DBP) were determined simultaneously in mothers and their children from delivery to several months of age. Maternal blood samples, drawn approximately 6 wk before the expected date of delivery, were also analyzed. At delivery, total vitamin D metabolites in maternal and fetal plasma were closely correlated, maternal levels being higher. Unbound (free) vitamin D metabolite concentrations were higher in fetal than in maternal plasma, with the exception of free 1,25(OH)2D levels, which were equal. This suggests a rapid placental transfer of 1,25(OH)2D. 24,25(OH)2D and 25,26(OH)2D levels both in mothers and children were closely correlated with the precursor sterol 25OHD. For 1,25(OH)2D, no correlation could be demonstrated with any of the other vitamin D metabolites. DBP concentrations in maternal plasma at the time of delivery were about twice the mean adult reference value. In cord blood, DBP levels were in the lower part of the adult reference range. Maternal total 1,25(OH)2D levels, which were twice the reference mean during pregnancy, fell sharply after delivery but free 1,25(OH)2D levels much less. Analogous to the biochemical changes in the mother, the infants' DBP levels fell after birth, as a result of the sudden disappearance of the estrogen stimulus. At the same time, the mineral supply via the placenta was cut off.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Bone mineral homeostasis in spontaneously diabetic BB rats. I. Abnormal vitamin D metabolism and impaired active intestinal calcium absorption.

Calcium homeostasis was investigated in male BB rats with a diabetes duration of 3-4 weeks and compared with that in nondiabetic littermates either fed ad libitum or receiving selective semistarvation or an oral Ca supplement to obtain additional weight-matched and Ca intake-matched control groups. Diabetic rats had markedly increased food and Ca intake, so that their net Ca balance remained positive despite a 13-fold increase in urinary Ca excretion and a disappearance of active duodenal Ca absorption. Decreased duodenal Ca uptake correlated with decreased 1,25-(OH)2D3 levels (89 +/- 15 vs. 160 +/- 13 pg/ml in nondiabetic rats), decreased duodenal 9K Ca-binding protein concentrations (10 +/- 1 vs. 21 +/- 2 micrograms/mg protein), and decreased number of 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3]-binding sites in duodenum, although the binding affinity was above normal. Nondiabetic Ca-supplemented rats exhibited a similar response: decreased 1,25-(OH)2D3 (95 +/- 8 pg/ml) and 9K Ca-binding protein (7 +/- 0.5 micrograms/mg protein) concentrations, decreased active duodenal Ca uptake, increased urinary Ca excretion, and a normal net Ca balance. Plasma vitamin D-binding protein levels were decreased by 62% in diabetic rats, due to a marked decrease in production rate, while the plasma half-time remained normal. The free 1,25-(OH)2D3 index was highest in diabetic rats, suggesting partial vitamin D resistance at the duodenal level. In semistarved rats, 1,25-(OH)2D3 levels and active Ca uptake remained normal, and the free 1,25-(OH)2D3 index was increased, together with suppressed vitamin D-binding protein levels. These studies indicate that nutritional abnormalities may contribute to but cannot totally explain the disturbances in vitamin D metabolism, transport, or action at the intestinal level.

Animals↗

Bone mineral homeostasis in spontaneously diabetic BB rats. II. Impaired bone turnover and decreased osteocalcin synthesis.

Bone morphology and function were studied in male spontaneously diabetic BB rats after 3-4 weeks of diabetes. The tibia and lumbar vertebrae weights were decreased, but the bone calcium percentage remained normal. Bone volumes in the tibial metaphysis and the first lumbar vertebra were normal on quantitative histomorphometry. Osteoclast, osteoblast, and osteoid surface percentages, however, and the calculated daily mineral apposition rate in the tibia (1.0 +/- 0.4 vs. 5.6 +/- 0.6 microns/day) and vertebra (0.2 +/- 0.1 vs. 2.3 +/- 0.2 microns/day) were all severely decreased in diabetic rats. Plasma osteocalcin concentrations were also markedly decreased in diabetic rats (24 +/- 2 vs. 108 +/- 10 ng/ml); the half-times of [125I]osteocalcin were similar in diabetic and nondiabetic rats, indicating that decreased plasma osteocalcin was due to decreased synthesis. Plasma osteocalcin levels were more decreased than expected from their suppressed 1,25-dihydroxyvitamin D3 levels, and 1,25-dihydroxyvitamin D3 injections did not increase plasma osteocalcin in diabetic rats as they did in nondiabetic rats. Bone osteocalcin content was normal in diabetic rats. Photon absorptiometry of tibiae showed a similar bone mineral content in diabetic and nondiabetic rats. Biomechanical properties of diabetic rat femora were all in the normal range. Nondiabetic semistarved rats with the same body weight as diabetic rats exhibited a similar delay in bone growth as diabetic rats, but the osteoblast and osteoid surfaces were normal, and the mineral apposition rate was normal (tibia) or slightly decreased (vertebra). Plasma osteocalcin concentrations were also normal in semistarved rats. Thus, the number and/or function of osteoblasts are severely suppressed in diabetes, and this results in decreased osteoid surface, mineral apposition rate, and plasma osteocalcin levels; moreover, these changes cannot be explained by simple weight loss.

Animals↗

Osteocalcin during the reproductive cycle in normal and diabetic rats.

Concentrations of osteocalcin were measured in plasma and bone of normal and diabetic rats during the reproductive cycle and compared with plasma 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3) concentrations. The age-dependence of osteocalcin was also examined. Plasma concentrations of osteocalcin levels were low but detectable in 21-day-old fetuses (3.7 +/- 0.3 nmol/l); osteocalcin concentrations were highest in weaning rats (104 +/- 9 nmol/l) and decreased thereafter. In adult rats, plasma concentrations of both osteocalcin and 1,25-(OH)2D3 increased during the last days of normal pregnancy, and even more so in rats fed a diet low in calcium and phosphate. After an early post-partum decline, osteocalcin concentrations in plasma remained at non-pregnant levels in lactating rats fed a high calcium/phosphate diet while their 1,25-(OH)2D3 concentrations were higher than in non-pregnant rats; however, lactating rats fed a low calcium/phosphate diet showed increasing osteocalcin concentrations. In spontaneously diabetic BB rats, plasma osteocalcin concentrations were severely decreased compared with those in non-diabetic rats, more than would have been expected from their decreased 1,25-(OH)2D3 concentrations. Moreover, plasma osteocalcin did not increase during pregnancy or lactation in diabetic rats, even when fed a low calcium/phosphate diet. Fetuses of diabetic rats also had lower plasma osteocalcin levels than fetuses from non-diabetic rats or than weight-matched fetuses from semistarved rats. In contrast to plasma osteocalcin concentrations, bone osteocalcin concentrations and content were not altered by pregnancy, lactation, low calcium/phosphate diet or diabetes.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

[Vitamin D metabolism in the elderly. Evidence of appropriate synthesis of 1,25 (OH)2 D3].

Serum levels of 25 OH D3, 1.25 (OH)2 D3, PTH and several other parameters of mineral metabolism were measured in 55 elderly (greater than or equal to 70 years old), at the beginning of fall in Puertollano (38 degrees of latitude), distributed in three groups: healthy elderly who either live at home (Group 1, 16 cases) or in a Social Security Residence (Group 2, 20 cases) and chronically sick or hospitalized elderly patients (Group 3, 19 cases). Every subject had a creatinine serum level less than 1.2 mg/dl. Serum levels of 25 OH D3, in Group 1 were similar to the young control group 24 +/- 10 micrograms/L, while its levels in Groups 2 and 3 were decreased (13 +/- 4 micrograms/L p less than 0.001 and 10 +/- 5 micrograms/L p less than 0.001--respectively). The opposite was founded for PTH. Serum levels of 1.25 (OH)2 D3 were normal when compared to control group in Groups 1 and 2 (49 +/- 8 micrograms/L and 49 +/- 6 micrograms/L) but they were significantly decreased in Group 3: 38 +/- 12 (p less than 0.001). Our results demonstrate that elderly people with enough sun exposure may have adequate 25 OHD3 levels while those who have a restricted exposure will have decreased levels. In the elderly, 1.25 (OH)2 D3 levels are normal if 250 HD3 levels are also normal or sufficient, only very low levels of 250 HD3 are not able to maintain normal serum levels despite their secondary hyperparathyroidism.

Aged↗

Renal cadaveric transplantation in diabetics using total lymphoid irradiation or cyclosporin A. A controlled randomized study. Leuven Collaborative Transplantation Group.

A total of 20 renal transplant patients with end-stage diabetic nephropathy entered a randomized controlled trial comparing preoperative, fractionated total lymphoid irradiation (TLI) (radiation dose, 20-30 Gy) with postoperative cyclosporin A (CsA). Both groups received postoperative low-dose methylprednisolone maintenance therapy. The 3-year patient and graft survival was similar for both groups (100% and 71% in the TLI and 75% and 75% in the CsA group, respectively). Rejection crises occurred significantly more frequently (P less than 0.01) in the TLI-treated recipients. The incidence of infectious or diabetic complications was not significantly different in both groups. It is concluded that TLI and CsA are both effective treatment modalities for cadaveric renal transplantation in diabetics; CsA, however, is superior in preventing rejection crises.

Adult↗

The effect of vitamin D analogs and of vitamin D-binding protein on lymphocyte proliferation.

In the absence of vitamin D-binding protein (DBP), 1,25-(OH)2D3 at 10(-12) M significantly inhibited the [3H]thymidine incorporation in human lymphocytes during mixed lymphocyte cultures (MLC) or after phyto-hemaglutinin (PHA) stimulation. In the presence of a physiological concentration of DBP (5 x 10(-6) M), the concentration of 1,25-(OH)2D3 required for inhibition was 10(-10) M (for PHA-cultures) and 10(-9) M (for MLC). Several vitamin D analogs were compared for their inhibitory action on PHA stimulation. In the absence of DBP, the concentration necessary for 50% inhibition of [3H]thymidine incorporation ranged from 10(-12) M [1,25-(OH)2D3 and 24,24-F2-1,25-(OH)2D3], over 10(-10) M [1,24R, 25-(OH)3D3; 1,25S, 26-(OH)3D3 and 26,27-F6-1,25-(OH)2D3] and 10(-8) M [25 OHD3 and 24,25-(OH)2D3] to 10(-6) M [calcitriol-lactone]. This rank order correlates with the binding affinity of the various analogs to the cytoplasmic 1,25-(OH)2D3-receptor. DBP counteracted the inhibitory effect of all analogs and the degree of counteraction was directly proportional to the binding affinity between DBP and the vitamin D analog. DBP thus decreased the in vitro inhibitory action of 1,25-(OH)2D3 and its analogs on lymphocyte proliferation. Of all analogs tested, only 1,25-(OH)2D3 had a significant effect at a physiological concentration.

Calcitriol↗

The effects of chronic vitamin D deficiency on the skeleton in the adult rabbit.

Albino rabbits were fed a 1.0% Ca, 0.5% P, vitamin D-deficient diet for 11.7 to 31.3 mo. Control rabbits were fed either this diet with the addition of 2.2 units/gm of vitamin D3 or a standard laboratory rabbit ration. Serum levels of 25-OH-D and 1,25-(OH)2D were both undetectable in all vitamin D-deficient rabbits but were present at levels typically found in other species in the control rabbits. Vitamin D deficiency resulted in elevated serum PTH values but did not produce significant changes in serum Ca levels, femur length, femur ash weight to body weight ratio, or tibial breaking strength. The vitamin D-deficient rabbits could be readily separated into two distinct subgroups. Four of these rabbits were normophosphatemic (P = 3.7 +/- 0.4 mg/dl) whereas the other five were severely hypophosphatemic (P = 0.8 +/- 0.2 mg/dl). During the last 10 days of the study the control and normophosphatemic vitamin D-deficient rabbits were in positive Ca and zero P balance. The hypophosphatemic vitamin D-deficient rabbits were in zero Ca and negative P balance. This negative P balance resulted from a net intestinal secretion, as urinary P excretion was negligible. Femur ash weight as a percentage of dry weight was decreased in hypophosphatemic but not the normophosphatemic vitamin D-deficient rabbits. Histomorphometric analyses indicated the bones from the normophosphatemic vitamin D-deficient rabbits were normal. In contrast, vertebral trabecular bone from the hypophosphatemic rabbits contained large amounts of osteoid that was not mineralizing, as indicated by a failure to take up the fluorescent label calcein.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of opioid antagonism on the haemodynamic and hormonal responses to exercise.

1. Physical effort involves, along with an increase in the plasma concentration of beta-endorphin, profound adaptations of the circulation and the endocrine system. The effects of opioid antagonism on the responses of blood pressure, heart rate and several hormones to exercise were therefore studied in 10 normal men. They exercised in the supine position up to 33% and 66% of their maximal exercise capacity and received in a randomized double-blind cross-over protocol, either saline or naloxone (10 mg intravenously, followed by a continuous infusion of 10 mg/h). 2. Intra-arterial pressure and heart rate were continuously monitored, but were not affected by naloxone. 3. At rest, opioid antagonism produced a rise in plasma renin activity and in plasma adrenocorticotropin, cortisol and aldosterone, but only the stimulation of the two adrenocortical hormones differed significantly from the control experiments; at rest naloxone also prevented the fall in plasma adrenaline, which occurred with saline infusion. Furthermore, the exercise-induced rises in plasma angiotensin II, aldosterone, cortisol, noradrenaline and adrenaline were higher on naloxone than on saline, while a similar tendency was also present for the increases with exercise in plasma renin activity and plasma adrenocorticotropin. Neither at rest nor during exercise did opioid antagonism alter plasma lactate and glucose and serum insulin and growth hormone. 4. In conclusion, (1) endogenous opioids are not involved in the responses of blood pressure and heart rate to supine exercise; (2) at rest and during exercise, the endogenous opioids inhibit the secretion of adrenocorticotropin, aldosterone, cortisol, noradrenaline and adrenaline; (3) they also inhibit the plasma renin-angiotensin II system indirectly via the catecholamines.

Adrenal Cortex Hormones↗